Digital electric energy metering mobile detection platform

By designing transmission components, shock absorbing components, fixed components and folding structures on the digital power metering mobile detection platform, the problems of the platform being unable to move, large detection errors and inconvenient movement are solved, and the flexible movement and error reduction of the detection device are achieved.

CN120122052AActive Publication Date: 2025-06-10SPL ELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202510281757.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2025-06-10
Estimated Expiration
2045-03-11

AI Technical Summary

Technical Problem

The existing digital power metering mobile detection platform has problems such as inability to move devices, increased detection errors caused by bumps in equipment, and inconvenient equipment movement.

Method used

A digital power metering mobile detection platform including transmission assembly, shock absorbing assembly, fixed assembly and folding structure is designed. The horizontal displacement of the detection device is achieved through the transmission assembly, the shock absorbing assembly reduces the impact of vibration, the fixed assembly and the hydraulic press assist in movement, and the folding structure facilitates force application.

Benefits of technology

The flexible movement of the detection device is realized, detection errors are reduced, and the convenience and efficiency of equipment movement are improved.

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Abstract

The invention belongs to the field of mobile detection, and particularly relates to a digital electric energy metering mobile detection platform which comprises a carriage, two sliding rails are fixedly connected to the inner bottom face of the carriage, baffles are fixedly connected to the side faces of the sliding rails, a sliding plate is arranged above the sliding rails, and the protruding end of the lower end of the sliding plate is slidably connected into the sliding rails. A transmission assembly is arranged on the inner side face of the carriage, a detection device is arranged above the carriage, a damping assembly is arranged on the lower surface of the detection device, and a fixing assembly is arranged above the detection device. The transmission assembly is arranged on the inner side of the carriage, the first motor controls the driving gear to rotate, then the transmission crawler drives the driven gear and the reciprocating lead screw to rotate, the reciprocating lead screw controls the sliding plate to move in the carriage, and therefore the horizontal displacement of the detection device is controlled.
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Description

Technical Field

[0001] The present invention belongs to the field of mobile detection, and particularly relates to a digital power metering mobile detection platform. Background Art

[0002] A digital power metering mobile detection platform is a system that uses digital technology and mobile devices to detect and manage power metering. This platform typically combines modern information technology, communication technology, and power measurement technology to improve the accuracy and efficiency of power metering. The following are some key components and functional features:

[0003] 1. Key Components

[0004] a. Mobile Detection Devices:

[0005] Portable electricity meter tester: Used to detect the accuracy and performance of electricity meters;

[0006] Smart terminal: Such as a tablet computer or mobile phone, equipped with detection software to record and analyze detection data.

[0007] b. Digital Electricity Meters:

[0008] Smart electricity meters: Integrated with digital technology, capable of real-time recording of electricity data and transmitting the data to the central system through a communication interface.

[0009] c. Data Acquisition and Transmission System:

[0010] Wireless communication module: Such as GSM, 3G / 4G, Wi-Fi, etc., for real-time data transmission;

[0011] Data processing platform: Central server or cloud platform for storing, analyzing, and managing data.

[0012] d. Analysis and Reporting Tools:

[0013] Data analysis software: Statistically analyzes the collected data and generates detailed reports;

[0014] Visualization tools: Charts and dashboards for displaying electricity usage and detection results.

[0015] 2. Functional Features

[0016] a. Real-time Monitoring and Detection:

[0017] Obtain the readings of electricity meters in real time, and detect the operating status and accuracy of electricity meters;

[0018] During the detection process, multiple parameters of the electricity meter can be monitored, such as voltage, current, power factor, etc.

[0019] b. Data Acquisition and Recording:

[0020] Automatically record the data of each detection, including information such as the electricity meter reading, detection time, location, etc.;

[0021] Generate historical data records for easy tracking and analysis.

[0022] c. Remote management and maintenance:

[0023] Support remote detection and management through wireless communication technology;

[0024] The electricity meter can be configured, calibrated, and fault checked remotely.

[0025] d. Data analysis and report generation:

[0026] Statistically analyze the collected data to identify abnormal situations;

[0027] Generate a detailed detection report, including the accuracy evaluation and performance analysis of the electricity meter.

[0028] e. Improve inspection efficiency:

[0029] The mobile detection platform can significantly improve the efficiency of electricity meter inspection and reduce the manual inspection time;

[0030] Support batch detection to improve the detection coverage.

[0031] There is a digital electric energy metering mobile detection platform disclosed in the existing patent with the publication number CN208172237U, which includes a vehicle body fixing plate, an L-shaped shock-absorbing frame, an anti-seismic connecting piece, an equipment cabinet, and a detection operation table. The vehicle body fixing plate is used for the rigid fixation between the platform and the carrying vehicle body as a whole. The L-shaped shock-absorbing frame is installed on the upper surface of the vehicle body fixing plate through a rear fixing piece and a front fixing piece. An equipment cabinet and a detection operation table are installed on the L-shaped shock-absorbing frame. The equipment cabinet and the detection operation table are supported on the L-shaped shock-absorbing frame through an anti-seismic connecting piece to achieve good anti-seismic performance of the core equipment. A forklift fork mounting structure and supporting casters for facilitating the handling of the equipment by forklift and manual handling are also installed at the bottom of the L-shaped shock-absorbing frame.

[0032] The existing digital electric energy metering mobile detection platform still has the following deficiencies:

[0033] 1. Since the scope of electricity use is extensive, the sites with demand for electricity metering will also vary. However, the digital electric energy metering detection platform is generally set as a fixed type, and it is necessary to send the components to the detection site for detection, and the device cannot be moved, thus making it impossible to detect the on-site components.

[0034] 2. Since the detection standard of the digital power metering detection platform is required to be very precise, the design of the internal detection components is also relatively sophisticated. During the movement of the digital power metering detection platform, various situations may occur, resulting in the jolting of the equipment, which is likely to increase the detection error of the digital power metering detection platform.

[0035] 3. Due to the set size of the digital power metering detection platform, it is not easy to apply force to it during movement, resulting in inconvenience in moving the equipment. Summary of the Invention

[0036] The object of the present invention is to address the problems in the above-mentioned background technology, where the digital power metering detection platform is generally set as a fixed type, and components need to be sent to the detection site for detection, and the device cannot be moved to detect on-site components. During the movement of the digital power metering detection platform, various situations may occur, resulting in the jolting of the equipment, which is likely to increase the detection error of the digital power metering detection platform. Due to the set size of the digital power metering detection platform, it is not easy to apply force to it during movement, resulting in inconvenience in moving the equipment. The present invention provides a digital power metering mobile detection platform.

[0037] To achieve the above object, the present invention adopts the following technical solutions: A digital power metering mobile detection platform includes a carriage. Two slide rails are fixedly connected to the inner bottom surface of the carriage. A baffle is fixedly connected to the side surface of the slide rail. A slide plate is arranged above the slide rail. The protruding end at the lower end of the slide plate is slidably connected to the slide rail. A transmission component is arranged on the inner side surface of the carriage. A detection device is arranged above the carriage. A shock absorption component is arranged on the lower surface of the detection device. A fixing component is arranged above the detection device. A folding component is arranged on the side surface of the detection device.

[0038] Further, the transmission component includes a driving gear and a driven gear. Both the driving gear and the driven gear are rotatably connected to the inner side surface of the carriage. A transmission track is arranged outside the driving gear and the driven gear. The driving gear and the driven gear are meshed with the inner side surface of the transmission track through saw teeth, and the saw teeth are fixedly connected to the inner side surface of the transmission track.

[0039] Further, a first motor is fixedly connected to the inner bottom surface of the carriage. The output end of the first motor is fixedly connected to the side surface of the driving gear. A reciprocating lead screw is fixedly connected to the side surface of the driven gear. The end of the reciprocating lead screw is fixedly connected to the side surface of the baffle. The reciprocating lead screw penetrates and is threadedly connected to the slide plate.

[0040] Furthermore, the shock absorption assembly includes shock absorption air rods. Four of the shock absorption air rods are fixedly connected to the bottom surface of the detection device. The bottom surface of the shock absorption air rod is fixedly connected to a fixing plate. A spring is fixedly connected between the fixing plate and the detection device. The lower surface of the fixing plate is rotatably connected to a turntable. The lower surface of the turntable is fixedly connected to a chassis. A roller is rotatably connected inside the chassis.

[0041] Furthermore, the fixing assembly includes two top frames. The top frames are fixedly connected to the inner top surface of the carriage. The top frames are arranged on one side of the carriage close to the exit end. A hydraulic press is rotatably connected inside the top frames. A second motor is arranged between the two top frames. The second motor is fixedly connected to the inner top surface of the carriage. The output ends on both sides of the second motor penetrate through the side surfaces of the top frames and are fixedly connected to the side surfaces of the hydraulic press.

[0042] Furthermore, two first fixing frames are fixedly connected to the upper surface of the detection device. The output end of the hydraulic press is fixedly connected to a hydraulic rod. The end of the hydraulic rod is rotatably connected to the inside of the first fixing frame.

[0043] Furthermore, vertical sliding grooves are formed on both sides of the detection device. Two arc-shaped grooves are arranged beside the sliding grooves. The inner diameters of the two arc-shaped grooves are equal, and the arc lengths of the two arc-shaped grooves are unequal.

[0044] Furthermore, the folding structure includes arc-shaped side plates. Two connecting columns are slidably connected in the sliding grooves. The diameter of the connecting columns is equal to the width of the arc-shaped grooves. The outer sides of the connecting columns are fixedly connected to the side surfaces of the arc-shaped side plates. A fixing rod is fixedly connected between the two arc-shaped side plates.

[0045] Compared with the existing technology, the advantages of this digital power metering mobile detection platform are as follows:

[0046] 1. In the present invention, by arranging the transmission assembly inside the carriage, the driving gear is controlled to rotate by the first motor, and then the driven gear and the reciprocating lead screw are driven to rotate by the transmission track, so that the reciprocating lead screw controls the displacement of the sliding plate inside the carriage, thereby realizing the horizontal displacement control of the detection device. By arranging the fixing assembly above the detection device, when the detection device is stored in the carriage, the detection device is fixed by the hydraulic rod. When the detection device is moved and transported, the extension length of the hydraulic rod can be controlled, and the hydraulic press can also rotate freely inside the top frame. When it is selected to move the detection device out of the carriage, the hydraulic press and the hydraulic rod can also provide additional auxiliary pulling force for the detection device. After the detection device is moved out of the carriage, only by moving the hydraulic rod out of the first fixing frame, the free movement of the detection device can be realized.

[0047] 2. The present invention is provided with a shock absorption component below the detection device. When the detection device is pushed, the turntable, chassis, and rollers provided below facilitate the turning and movement of the detection device, and the shock absorption air rod and spring can absorb the shock potential energy, thereby reducing the impact of vibration on the detection device.

[0048] 3. The present invention is provided with a folding structure. When it is necessary to push the detection device, the fixed rod can be pulled upward to move the arc-shaped side plate, thereby controlling the sliding of the connecting column in the chute. Then, the fixed rod is pulled horizontally to control the upper connecting column to slide into the arc-shaped groove, thereby realizing the expansion of the fixed rod, and facilitating the application of force during the process of pushing the detection device. BRIEF DESCRIPTION OF THE DRAWINGS

[0049] Figure 1 is a schematic front view structure of a digital power metering mobile detection platform provided by the present invention;

[0050] Figure 2 is a schematic cross-sectional structure inside the carriage of a digital power metering mobile detection platform provided by the present invention;

[0051] Figure 3 is Figure 2 an enlarged view of part A in

[0052] Figure 4 is a schematic structure diagram of the bottom transmission component of a digital power metering mobile detection platform provided by the present invention;

[0053] Figure 5 is a schematic structure diagram of the side chute of a digital power metering mobile detection platform provided by the present invention;

[0054] Figure 6 is Figure 5 an enlarged view of part B in

[0055] In the figure, 1 is the carriage, 2 is the slide rail, 3 is the baffle, 4 is the driving gear, 5 is the driven gear, 6 is the transmission track, 7 is the sawtooth, 8 is the first motor, 9 is the reciprocating lead screw, 10 is the slide plate, 11 is the top frame, 12 is the hydraulic press, 13 is the second motor, 14 is the first fixing frame, 15 is the hydraulic rod, 16 is the detection device, 17 is the chute, 18 is the arc-shaped groove, 19 is the connecting column, 20 is the arc-shaped side plate, 21 is the fixed rod, 22 is the shock absorption air rod, 23 is the fixing plate, 24 is the spring, 25 is the turntable, 26 is the chassis, 27 is the roller. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0056] The following embodiments are only for illustrative purposes and are not intended to limit the scope of the present invention.

[0057] As Figures 1 - 6As shown in the figure, a digital power metering mobile detection platform includes a carriage 1. The inner bottom surface of the carriage 1 is fixedly connected with two slide rails 2. The side surface of the slide rail 2 is fixedly connected with a baffle 3. Above the slide rail 2, there is a slide plate 10. The protruding end at the lower end of the slide plate 10 is slidably connected inside the slide rail 2. A transmission component is arranged on the inner side surface of the carriage 1. Above the carriage 1, there is a detection device 16. A shock absorption component is arranged on the lower surface of the detection device 16. A fixing component is arranged above the detection device 16. A folding component is arranged on the side surface of the detection device;

[0058] The transmission component includes a driving gear 4 and a driven gear 5. Both the driving gear 4 and the driven gear 5 are rotatably connected to the inner side surface of the carriage 1. A transmission track 6 is arranged outside the driving gear 4 and the driven gear 5. The driving gear 4 and the driven gear 5 are meshed and connected to the inner side surface of the transmission track 6 through saw teeth 7. The saw teeth 7 are fixedly connected to the inner side surface of the transmission track 6;

[0059] The inner bottom surface of the carriage 1 is fixedly connected with a first motor 8. The output end of the first motor 8 is fixedly connected to the side surface of the driving gear 4. The side surface of the driven gear 5 is fixedly connected with a reciprocating lead screw 9. The end of the reciprocating lead screw 9 is fixedly connected to the side surface of the baffle 3. The reciprocating lead screw 9 passes through and is threadedly connected inside the slide plate 10. By arranging the transmission component inside the carriage 1 and controlling the rotation of the driving gear 4 by the first motor 8, the driven gear 5 and the reciprocating lead screw 9 are driven by the transmission track 6 to rotate, and then the slide plate 10 is controlled to displace inside the carriage 1 by the reciprocating lead screw 9, so as to realize the horizontal displacement control of the detection device 16;

[0060] The shock absorption component includes shock absorption air rods 22. The four shock absorption air rods 22 are fixedly connected to the bottom surface of the detection device 16. The bottom surface of the shock absorption air rod 22 is fixedly connected with a fixing plate 23. A spring 24 is fixedly connected between the fixing plate 23 and the detection device 16. The lower surface of the fixing plate 23 is rotatably connected with a turntable 25. The lower surface of the turntable 25 is fixedly connected with a chassis 26. A roller 27 is rotatably connected inside the chassis 26;

[0061] The fixing component includes two top frames 11, which are fixedly connected to the inner top surface of the carriage 1. The top frames 11 are arranged on one side of the carriage 1 close to the exit end. A hydraulic press 12 is rotatably connected inside the top frame 11. A second motor 13 is arranged between the two top frames 11. The second motor 13 is fixedly connected to the inner top surface of the carriage 1. The output ends on both sides of the second motor 13 penetrate through the side surface of the top frame 11 and are fixedly connected to the side surface of the hydraulic press 12. By arranging a shock-absorbing component below the detection device 16, when the detection device 16 is pushed, the turntable 25, the chassis 26 and the rollers 27 arranged below facilitate the steering and movement of the detection device 16, and the shock-absorbing air rod 22 and the spring 24 can absorb the vibration potential energy, thereby reducing the impact of vibration on the detection device 16;

[0062] Two first fixing frames 14 are fixedly connected to the upper surface of the detection device 16. The output end of the hydraulic press 12 is fixedly connected to a hydraulic rod 15. The end of the hydraulic rod 15 is rotatably connected to the inner side of the first fixing frame 14. By arranging a fixing component above the detection device 16, when the detection device is stored in the carriage, the detection device 16 is fixed by the hydraulic rod 15. When the detection device 16 is moved and transported, the extension length of the hydraulic rod 15 can be controlled, and the hydraulic press 12 can also rotate freely inside the top frame 11. When it is selected to move the detection device 16 out of the carriage, the hydraulic press 12 and the hydraulic rod 15 can also provide additional auxiliary pulling force for the detection device. After the detection device 16 is moved out of the carriage 1, only by moving the hydraulic rod 15 out of the first fixing frame 14 can the free movement of the detection device be realized;

[0063] Vertical sliding grooves 17 are formed on both sides of the detection device 16. Two arc-shaped grooves 18 are arranged beside the sliding grooves 17. The inner diameters of the two arc-shaped grooves 18 are equal, and the arc lengths of the two arc-shaped grooves 18 are unequal;

[0064] The folding structure includes arc-shaped side plates 20. Two connecting columns 19 are slidably connected in the sliding grooves 17. The diameter of the connecting columns 19 is equal to the width of the arc-shaped grooves 18. The outer sides of the connecting columns 19 are fixedly connected to the side surfaces of the arc-shaped side plates 20. A fixing rod 21 is fixedly connected between the two arc-shaped side plates 20. By arranging the folding structure, when the detection device 16 needs to be pushed, the fixing rod 21 can be pulled upward to move the arc-shaped side plates 20, thereby controlling the sliding of the connecting columns 19 in the sliding grooves 17. Then, by horizontally pulling the fixing rod 21, the upper connecting column 19 is controlled to slide into the arc-shaped groove 18, thereby realizing the unfolding of the fixing rod 21 and facilitating the application of force during the process of pushing the detection device 16.

[0065] The working principle of the present invention is as follows:

[0066] By arranging the transmission assembly inside the carriage 1, the driving gear 4 is controlled to rotate by the first motor 8, and then the driven gear 5 and the reciprocating lead screw 9 are driven to rotate by the transmission track 6, so that the reciprocating lead screw 9 controls the displacement of the sliding plate 10 inside the carriage 1, thereby realizing the control of the horizontal displacement of the detection device 16;

[0067] By arranging a fixing assembly above the detection device 16, when the detection device is stored in the carriage, the detection device 16 is fixed by the hydraulic rod 15. When the detection device 16 is moved and transported, the extension length of the hydraulic rod 15 can be controlled, and the hydraulic press 12 can also rotate freely inside the top frame 11. When it is selected to move the detection device 16 out of the carriage, the hydraulic press 12 and the hydraulic rod 15 can also provide additional auxiliary pulling force for the detection device. After the detection device 16 is moved out of the carriage 1, only by moving the hydraulic rod 15 out of the first fixing frame 14 can the free movement of the detection device be realized;

[0068] By arranging a shock-absorbing assembly below the detection device 16, when the detection device 16 is pushed, the turntable 25, the bottom frame 26 and the rollers 27 arranged below facilitate the steering and movement of the detection device 16, and the shock-absorbing air rod 22 and the spring 24 can absorb the vibration potential energy, thereby reducing the influence of vibration on the detection device 16;

[0069] By arranging a folding structure, when it is necessary to push the detection device 16, the fixing rod 21 can be pulled upward to move the arc-shaped side plate 20, thereby controlling the sliding of the connecting column 19 in the chute 17, and then pulling the fixing rod 21 horizontally to control the upper connecting column 19 to slide into the arc-shaped groove 18, thereby realizing the unfolding of the fixing rod 21, which is convenient for applying force during the process of pushing the detection device 16.

[0070] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included in the protection scope of the present invention.

Claims

1. A digital electric energy metering mobile detection platform, characterized in that: The invention comprises a carriage (1), wherein two slide rails (2) are fixedly connected to the inner bottom surface of the carriage (1), a baffle (3) is fixedly connected to the side of the slide rail (2), a slide plate (10) is arranged above the slide rail (2), and the protruding end of the lower end of the slide plate (10) is slidably connected to the slide rail (2), a transmission component is arranged on the inner side surface of the carriage (1), a detection device (16) is arranged above the carriage (1), a shock absorbing component is arranged on the lower surface of the detection device (16), a fixing component is arranged above the detection device (16), and a folding component is arranged on the side of the detection device.

2. The digital electric energy metering mobile detection platform according to claim 1 is characterized in that: The transmission assembly comprises a driving gear (4) and a driven gear (5), wherein the driving gear (4) and the driven gear (5) are both rotatably connected to the inner side surface of the carriage (1), and a transmission track (6) is arranged on the outer side of the driving gear (4) and the driven gear (5), and the driving gear (4) and the driven gear (5) are meshedly connected to the inner side surface of the transmission track (6) through saw teeth (7), and the saw teeth (7) are fixedly connected to the inner side surface of the transmission track (6).

3. The digital electric energy metering mobile detection platform according to claim 2 is characterized in that: A first motor (8) is fixedly connected to the inner bottom surface of the carriage (1); the output end of the first motor (8) is fixedly connected to the side of the driving gear (4); a reciprocating screw (9) is fixedly connected to the side of the driven gear (5); the end of the reciprocating screw (9) is fixedly connected to the side of the baffle (3); and the reciprocating screw (9) passes through and is threadedly connected to the inside of the slide plate (10).

4. The digital electric energy metering mobile detection platform according to claim 1 is characterized in that: The shock absorbing assembly comprises a shock absorbing gas rod (22), four of the shock absorbing gas rods (22) are fixedly connected to the bottom surface of the detection device (16), the bottom surface of the shock absorbing gas rod (22) is fixedly connected to a fixing plate (23), a spring (24) is fixedly connected between the fixing plate (23) and the detection device (16), the lower surface of the fixing plate (23) is rotatably connected to a turntable (25), the lower surface of the turntable (25) is fixedly connected to a base frame (26), and the inner side of the base frame (26) is rotatably connected to a roller (27).

5. The digital electric energy metering mobile detection platform according to claim 1 is characterized in that: The fixing assembly comprises two top frames (11), the top frames (11) are fixedly connected to the inner top surface of the carriage (1), the top frames (11) are arranged on a side of the carriage (1) close to the exit end, a hydraulic press (12) is rotatably connected inside the top frames (11), a second motor (13) is arranged between the two top frames (11), the second motor (13) is fixedly connected to the inner top surface of the carriage (1), and output ends on both sides of the second motor (13) penetrate the side of the top frame (11) and are fixedly connected to the side of the hydraulic press (12).

6. The digital electric energy metering mobile detection platform according to claim 5 is characterized in that: The upper surface of the detection device (16) is fixedly connected to two No. 1 fixing frames (14), the output end of the hydraulic press (12) is fixedly connected to a hydraulic rod (15), and the end of the hydraulic rod (15) is rotatably connected to the inner side of the No. 1 fixing frame (14).

7. The digital electric energy metering mobile detection platform according to claim 1 is characterized in that: Vertical slide grooves (17) are provided on both sides of the detection device (16), and two arc-shaped grooves (18) are provided on the sides of the slide groove (17). The inner diameters of the two arc-shaped grooves (18) are equal, and the arc lengths of the two arc-shaped grooves (18) are different.

8. The digital electric energy metering mobile detection platform according to claim 7 is characterized in that: The folding structure comprises an arc-shaped side plate (20), two connecting columns (19) are slidably connected in the sliding groove (17), the diameter of the connecting column (19) is equal to the width of the arc-shaped groove (18), the outer side of the connecting column (19) is fixedly connected to the side surface of the arc-shaped side plate (20), and a fixing rod (21) is fixedly connected between the two arc-shaped side plates (20).

Citation Information

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